Tian Lanxiang, Luo Yukai, Ren Jie, Zhao Chenchen
Key Laboratory of Earth and Planetary Physics, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China.
College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Antioxidants (Basel). 2024 Aug 21;13(8):1017. doi: 10.3390/antiox13081017.
The geomagnetic field (GMF) is crucial for the survival and evolution of life on Earth. The weakening of the GMF, known as the hypomagnetic field (HMF), significantly affects various aspects of life on Earth. HMF has become a potential health risk for future deep space exploration. Oxidative stress is directly involved in the biological effects of HMF on animals or cells. Oxidative stress occurs when there is an imbalance favoring oxidants over antioxidants, resulting in cellular damage. Oxidative stress is a double-edged sword, depending on the degree of deviation from homeostasis. In this review, we summarize the important experimental findings from animal and cell studies on HMF exposure affecting intracellular reactive oxygen species (ROS), as well as the accompanying many physiological abnormalities, such as cognitive dysfunction, the imbalance of gut microbiota homeostasis, mood disorders, and osteoporosis. We discuss new insights into the molecular mechanisms underlying these HMF effects in the context of the signaling pathways related to ROS. Among them, mitochondria are considered to be the main organelles that respond to HMF-induced stress by regulating metabolism and ROS production in cells. In order to unravel the molecular mechanisms of HMF action, future studies need to consider the upstream and downstream pathways associated with ROS.
地磁场(GMF)对地球上生命的生存和进化至关重要。地磁场减弱,即所谓的低磁场(HMF),会显著影响地球上生命的各个方面。HMF已成为未来深空探索的潜在健康风险。氧化应激直接参与HMF对动物或细胞的生物学效应。当氧化剂与抗氧化剂之间的平衡偏向氧化剂,导致细胞损伤时,就会发生氧化应激。氧化应激是一把双刃剑,这取决于偏离体内平衡的程度。在本综述中,我们总结了动物和细胞研究中关于HMF暴露影响细胞内活性氧(ROS)的重要实验结果,以及随之出现的许多生理异常,如认知功能障碍、肠道微生物群稳态失衡、情绪障碍和骨质疏松症。我们在与ROS相关的信号通路背景下讨论了对这些HMF效应潜在分子机制的新见解。其中,线粒体被认为是通过调节细胞内代谢和ROS产生来应对HMF诱导应激的主要细胞器。为了阐明HMF作用的分子机制,未来的研究需要考虑与ROS相关的上游和下游途径。